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Tracking antibiotic resistance genes in microplastic-contaminated soil

Chemosphere 2022 28 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Changcai Wu, Changcai Wu, Changcai Wu, Changcai Wu, Changcai Wu, Changcai Wu, Changcai Wu, Yajie Ma, Xianpeng Song, Xianpeng Song, Xianpeng Song, Yan Ma Yajie Ma, Yajie Ma, Yongpan Shan, Yongpan Shan, Yongpan Shan, Dan Wang, Yajie Ma, Yajie Ma, Yajie Ma, Yajie Ma, Yan Ma Dan Wang, Yongpan Shan, Yajie Ma, Yajie Ma, Yajie Ma, Yongpan Shan, Yajie Ma, Yajie Ma, Yongpan Shan, Dan Wang, Yajie Ma, Dan Wang, Yongpan Shan, Yajie Ma, Xiangliang Ren, Yongpan Shan, Xianpeng Song, Yongpan Shan, Xiangliang Ren, Xianpeng Song, Hongyan Hu, Xianpeng Song, Xianpeng Song, Yongpan Shan, Hongyan Hu, Yongpan Shan, Yongpan Shan, Xiangliang Ren, Yongpan Shan, Xiangliang Ren, Hongyan Hu, Hongyan Hu, Hongyan Hu, Xiangliang Ren, Hongyan Hu, Xiangliang Ren, Hongyan Hu, Yongpan Shan, Xiangliang Ren, Xiaoyan Ma, Xiaoyan Ma, Jinjie Cui, Jinjie Cui, Xiaoyan Ma, Xiaoyan Ma, Jinjie Cui, Xiaoyan Ma, Jinjie Cui, Jinjie Cui, Yan Ma Jinjie Cui, Yan Ma Yan Ma Jinjie Cui, Yan Ma Yan Ma Yan Ma Yan Ma

Summary

Researchers used metagenomics to track antibiotic resistance genes in agricultural soils with long histories of plastic mulch use across eight Chinese provinces, identifying 204 subtypes of resistance genes alongside thousands of mobile genetic elements, demonstrating that microplastic-contaminated soils are significant reservoirs for antibiotic resistance spread.

Agricultural soils and microplastics (MPs) are hotspots for antibiotic resistance genes (ARGs). Plastic mulch is the most important source of MPs in agricultural soil. ARGs, mobile genetic elements (MGEs), and their host profiles in long-term mulch MP-exposed soils remain unclear. In the present study, metagenomics was used to investigate the distribution patterns of ARGs and MGEs in eight Chinese provinces with a long history of plastic mulch use. A total of 204 subtypes of ARGs and thousands of MGEs (14 integrons, 28 insertions, and 2993 plasmids) were identified. A similar diversity of ARGs was found among MPs film-contaminated sites. The types of ARGs with a high abundance were more concentrated, and multidrug resistance genes were the dominant ARGs. Soils from regions with a longer history of plastic film use (such as Xinjiang province) had a higher abundance of ARGs and MGEs. The distribution of ARGs and MGEs exhibited a modular network distribution pattern. A total of 27 ARG subtypes and 29 MGEs showed co-occurrence network relationships. More than 10 common hosts of ARGs and MGEs, such as Pseudomonas, were found, and their abundances were highest in three provinces, including Xinjiang. This study may help elucidate the impact mechanism of long-term MP residues on the occurrence and spread of ARGs in soil.

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